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Heat transfer analysis of an integrated double skin façade and phase change material blind system

机译:一体式双层蒙皮立面和相变材料百叶窗系统的传热分析

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摘要

In this study, the heat transfer in an integrated double skin facade (DSF) and phase change material (PCM) blind system has been theoretically analysed. Both heat transfer and airflow models with CFD methods have been developed for the integrated DSF and PCM blind system. Data from an existing typical DSF building have been obtained in order to define input parameters for the simulation exercise and validate the numerical models. The temperature and velocity fields in DSF with the PCM blind system has been predicted under overheating scenario using the ANSYS Workbench FLUENT software and been compared with case of conventional aluminium blind system. This study has shown that the integrated PCM blind system was able to reduce the average air temperature and outlet temperature of the DSF while improving the convective heat transfer between the cavity air and the blades. Compared with the aluminium blind, the PCM blind can absorb large amount of excessive heat in the cavity. Overall the integrated PCM blind system has the potential to be used as an effective thermal management device for minimising the overheating effect in DSFs.
机译:在这项研究中,从理论上分析了集成双层蒙皮立面(DSF)和相变材料(PCM)盲板系统中的热传递。已经为集成的DSF和PCM百叶窗系统开发了具有CFD方法的传热模型和气流模型。已经从现有的典型DSF建筑物中获取了数据,以便为模拟练习定义输入参数并验证数值模型。已经使用ANSYS Workbench FLUENT软件在过热情况下预测了带有PCM百叶窗系统的DSF中的温度和速度场,并将其与常规铝百叶窗系统的情况进行了比较。这项研究表明,集成式PCM百叶窗系统能够降低DSF的平均空气温度和出口温度,同时改善型腔空气与叶片之间的对流传热。与铝制百叶窗相比,PCM百叶窗可以吸收空腔中的大量多余热量。总体而言,集成式PCM百叶窗系统有潜力用作有效的热管理设备,以最大程度地降低DSF中的过热影响。

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